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拓扑绝缘体 (Bi(1-x)Sb(x))(2)Te(3)中可调的狄拉克锥和绝缘体相的实现。

Realization of tunable Dirac cone and insulating bulk states in topological insulators (Bi(1-x)Sb(x))(2)Te(3).

机构信息

School of Physics, State Key Laboratory of Crystal Materials, Shandong University, Jinan 250100, People's Republic of China.

出版信息

Sci Rep. 2012;2:976. doi: 10.1038/srep00976. Epub 2012 Dec 13.

Abstract

The bulk-insulating topological insulators with tunable surface states are necessary for applications in spintronics and quantum computation. Here we present theoretical evidence for modulating the topological surface states and achieving the insulating bulk states in solid-solution (Bi(1-x)Sb(x))(2)Te(3). Our results reveal that the band inversion occurs in (Bi(1-x)Sb(x))(2)Te(3), indicating the non-triviality across the entire composition range, and the Dirac point moves upwards till it lies within the bulk energy gap accompanying the increase of Sb concentration x. In addition, with increasing x, the formation of prominent native defects becomes much more difficult, resulting in the truly insulating bulk. The solid-solution system is a promising way of tuning the properties of topological insulators and designing novel topologically insulating devices.

摘要

具有可调表面态的体绝缘拓扑绝缘体对于自旋电子学和量子计算的应用是必要的。在这里,我们提出了在固溶体 (Bi(1-x)Sb(x))(2)Te(3) 中调节拓扑表面态并实现绝缘体状态的理论依据。我们的结果表明,带反转发生在 (Bi(1-x)Sb(x))(2)Te(3) 中,表明在整个组成范围内是非平凡的,并且狄拉克点向上移动,直到它位于体能隙内,伴随着 Sb 浓度 x 的增加。此外,随着 x 的增加,形成显著的本征缺陷变得更加困难,导致真正的绝缘体。固溶体系是一种调节拓扑绝缘体性质和设计新型拓扑绝缘器件的有前途的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d14a/3521154/476d1d45ed57/srep00976-f1.jpg

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